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The Phosphorylated Pathway of Serine Biosynthesis Is Essential Both for Male Gametophyte and Embryo Development and for Root Growth in Arabidopsis

机译:丝氨酸生物合成的磷酸化途径对于雄配子体和胚发育以及拟南芥的根系生长都是必不可少的

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摘要

This study characterizes the phosphorylated pathway of Ser biosynthesis () in Arabidopsis thaliana by targeting phosphoserine phosphatase (PSP1), the last enzyme of the pathway. Lack of PSP1 activity delayed embryo development, leading to aborted embryos that could be classified as early curled cotyledons. The embryo-lethal phenotype of psp1 mutants could be complemented with PSP1 cDNA under the control of Pro35S (Pro35S:PSP1). However, this construct, which was poorly expressed in the anther tapetum, did not complement mutant fertility. Microspore development in psp1.1/psp1.1 Pro35S:PSP1 arrested at the polarized stage. The tapetum from these lines displayed delayed and irregular development. The expression of PSP1 in the tapetum at critical stages of microspore development suggests that PSP1 activity in this cell layer is essential in pollen development. In addition to embryo death and male sterility, conditional psp1 mutants displayed a short-root phenotype, which was reverted in the presence of Ser. A metabolomic study demonstrated that the plays a crucial role in plant metabolism by affecting glycolysis, the tricarboxylic acid cycle, and the biosynthesis of amino acids. We provide evidence of the crucial role of the in embryo, pollen, and root development and suggest that this pathway is an important link connecting primary metabolism with development.
机译:这项研究通过靶向磷酸丝氨酸磷酸酶(PSP1)(该途径的最后一种酶)来表征拟南芥中Ser生物合成的磷酸化途径。 PSP1活性不足会延迟胚胎发育,导致流产的胚胎可以归类为早期卷曲的子叶。 psp1突变体的胚胎致死表型可以在Pro35S(Pro35S:PSP1)的控制下与PSP1 cDNA互补。然而,在花药绒毡层中表达差的这种构建体不能补充突变体的育性。 psp1.1 / psp1.1 Pro35S:PSP1中的小孢子发育停滞在极化阶段。这些线的绒毡层显示出延迟和不规则的发育。 PSP1在小孢子发育的关键阶段在绒毡层中的表达表明,该细胞层中的PSP1活性对于花粉发育至关重要。除了胚胎死亡和雄性不育外,有条件的psp1突变体还表现出短根表型,在Ser的存在下可逆转。代谢组学研究表明,该酶通过影响糖酵解,三羧酸循环和氨基酸的生物合成,在植物代谢中起关键作用。我们提供了胚胎,花粉和根发育中关键作用的证据,并建议该途径是连接初级代谢和发育的重要环节。

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